AbstractThe fatigue design of nuclear components is based on an S-N curve established in air at 20°C. To this curve, different penalty factors, representative of various effects (scale effect, material variability, surface finish, environmental effect, etc), are then applied. This method considers that these effects are independent from each other.This paper is focused on the interactions between surface finish effects and environmental effects in the Low Cycle Fatigue (LCF) domain of an austenitic stainless steel type 304L. The aim of this work is to determine whether the effects of these two parameters are really independent or coupled. To better understand the environmental influence, high vacuum is used as reference. Tests were realized...
Widely used for structural materials in nuclear engineering, 316L austenitic stainless steel undergo...
The ASME Boiler and Pressure Vessel Code fatigue design curves for structural materials do not expli...
Recent research efforts have focused on characterizing the effects of light water reactor environmen...
AbstractThe fatigue design of nuclear components is based on an S-N curve established in air at 20°C...
Abstract304L austenitic stainless steel is notably used to manufacture pipes in primary cooling circ...
Le dimensionnement en fatigue des composants de centrales nucléaires prend en compte l’influence de ...
In most industries and more particularly in the Nuclear one, the use of new materials or new manufac...
International audienceA substantial amount of research effort has been applied to the field of envir...
The fatigue life design curves in nuclear codes are generally derived from uniaxial straincontrolled...
The lifetime extension of nuclear power stations is considered an energy challenge worldwide. That i...
The effect of surface finish on fatigue limit of Type 304 austenitic stainless steels has been inves...
The published papers related to the effects of surface finish on fatigue strength are reviewed in or...
Austenitic stainless steels is used in many components of nuclear power plants, particularly in the ...
The effect of surface finish on fatigue limit of Type 304 austenitic stainless steels has been inves...
Nowadays, for nuclear power plants licensing or operating life extensions, various safety authoritie...
Widely used for structural materials in nuclear engineering, 316L austenitic stainless steel undergo...
The ASME Boiler and Pressure Vessel Code fatigue design curves for structural materials do not expli...
Recent research efforts have focused on characterizing the effects of light water reactor environmen...
AbstractThe fatigue design of nuclear components is based on an S-N curve established in air at 20°C...
Abstract304L austenitic stainless steel is notably used to manufacture pipes in primary cooling circ...
Le dimensionnement en fatigue des composants de centrales nucléaires prend en compte l’influence de ...
In most industries and more particularly in the Nuclear one, the use of new materials or new manufac...
International audienceA substantial amount of research effort has been applied to the field of envir...
The fatigue life design curves in nuclear codes are generally derived from uniaxial straincontrolled...
The lifetime extension of nuclear power stations is considered an energy challenge worldwide. That i...
The effect of surface finish on fatigue limit of Type 304 austenitic stainless steels has been inves...
The published papers related to the effects of surface finish on fatigue strength are reviewed in or...
Austenitic stainless steels is used in many components of nuclear power plants, particularly in the ...
The effect of surface finish on fatigue limit of Type 304 austenitic stainless steels has been inves...
Nowadays, for nuclear power plants licensing or operating life extensions, various safety authoritie...
Widely used for structural materials in nuclear engineering, 316L austenitic stainless steel undergo...
The ASME Boiler and Pressure Vessel Code fatigue design curves for structural materials do not expli...
Recent research efforts have focused on characterizing the effects of light water reactor environmen...